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Increased quinolinic acid in peripheral mononuclear cells in Alzheimer's dementia
Mandy Busse1, Vanessa Hettler2, Victoria Fischer2
1Department of Psychiatry and Psychotherapy, University of Magdeburg, Leipziger Str. 44, 39120, Magdeburg, Germany. mandy.busse@gmx.de.
Abstract:
The role of monocytes and macrophages in the pathogenesis of neurodegenerative disorders such as Alzheimer's disease (AD) is poorly understood. Recently, we have shown that the number of CD14+ monocytes remained constant during healthy aging and in AD patients. Although only little is known about the function of activated macrophages and microglia in AD, one important mechanism involves the expression of quinolinic acid (QUIN), an endogenous N-methyl-D-aspartate glutamate receptor (NMDA-R) agonist which mediates excitotoxicity especially in the hippocampus. We used immunofluorescence stainings of PBMCs to determine the expression of quinolinic acid (QUIN) and the MHC class II molecule HLA-DR in peripheral monocytic cells in 51 healthy volunteers aged 22-87 years and 43 patients with AD at diagnosis (0 weeks) and during the course of rivastigmine treatment at 0.25 year (12 weeks), 0.5 year (30 weeks), 1 year, and 1.5 years. The number of QUIN+ HLA-DR+ cells rises in healthy persons aged 30-40 years compared to persons aged 60-70 years, indicating that this cell population increases with aging. AD patients at diagnosis had an increased frequency of QUIN+, QUIN+ HLA-DR+, and QUIN+ HLA-DR+/HLA-DR+ cells compared to aged-matched controls. These cell populations remained increased in AD for up to one year after initiation of treatment with rivastigmine; no alterations were detected in aged healthy persons. We conclude that the expression of the neurotoxic agent QUIN is increased in peripheral monocytes from AD patients. These cells could enter the brain and contribute to excitotoxicity.
Insights
Peripheral monocytes expressing quinolinic acid (QUIN) are elevated in Alzheimer's disease (AD) patients, potentially contributing to neuroinflammation and excitotoxicity. This finding offers new insights into AD pathogenesis and therapeutic targets.
Area of Science:
- Neuroimmunology
- Neurodegeneration
- Cellular Biology
Background:
- The role of monocytes and macrophages in Alzheimer's disease (AD) pathogenesis is not well understood.
- Activated macrophages and microglia may contribute to AD through quinolinic acid (QUIN)-mediated excitotoxicity.
- QUIN is an endogenous N-methyl-D-aspartate glutamate receptor (NMDA-R) agonist.
Purpose of the Study:
- To investigate the expression of QUIN and HLA-DR in peripheral monocytic cells in healthy individuals and AD patients.
- To determine if QUIN expression in monocytes changes with aging and in AD.
- To assess the impact of rivastigmine treatment on QUIN-expressing cells in AD patients.
Main Methods:
- Immunofluorescence staining of peripheral blood mononuclear cells (PBMCs).
- Analysis of QUIN and HLA-DR expression in 51 healthy volunteers and 43 AD patients.
- Longitudinal assessment of AD patients during rivastigmine treatment over 1.5 years.
Main Results:
- QUIN+ HLA-DR+ cell numbers increase with aging in healthy individuals.
- AD patients exhibit higher frequencies of QUIN+, QUIN+ HLA-DR+, and QUIN+ HLA-DR+/HLA-DR+ cells compared to age-matched controls.
- Elevated cell populations in AD patients persisted for up to one year after initiating rivastigmine treatment.
Conclusions:
- Peripheral monocytes from AD patients show increased expression of the neurotoxic agent QUIN.
- These monocytes may infiltrate the brain, exacerbating excitotoxicity and AD progression.
- This study highlights a potential role for peripheral immune cells in AD pathogenesis.